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4. Fabrication of a Paper Memory Transistor by Using a Solution Process

5. 3‐5: Late‐News‐Paper: A Two‐Dimensionally Aligned Array with 1‐μm Pixel Pitch Using Ferroelectric Liquid Crystal Pixels for Holography Application

8. Giant electrical energy storage density in the P(VDF-TrFE)–graphene oxide composite papers with quasi-two-dimensional ferroelectricity

9. Ultrasensitive Paper-Based Photoelectrochemical Sensing Platform Enabled by the Polar Charge Carriers-Created Electric Field

10. Uniformly assembled vanadium doped ZnO microflowers/ bacterial cellulose hybrid paper for flexible piezoelectric nanogenerators and self-powered sensors

13. Paper Transistors with Organic Ferroelectric P(VDF-TrFE) Thin Films Using a Solution Processing Method

14. Bistable C1 ferroelectric liquid crystal device for e-paper application

15. 58-4: Distinguished Student Paper: Active Matrix Field Sequential Color Electrically Suppressed Helix Ferroelectric Liquid Crystal for High Resolution Displays

16. 36.4:Invited Paper: Real-Time Light Amplification by Photorefractive Ferroelectric Liquid Crystal Mixtures

18. Highly Conductive Ferroelectric Cellulose Composite Papers for Efficient Triboelectric Nanogenerators

19. Supplement to the paper: M. Matlak, Phase Transitions 81 (2008), p. 857

20. Non-volatile Paper Transistors with Poly(vinylidene fluoride-trifluoroethylene) Thin Film Using a Solution Processing Method

21. Comments on the paper 'Studies on growth and characterization of a novel nonlinear optical and ferroelectric material – N,N-dimethylurea picrate single crystal'

22. L-5:Late-News Paper: Field Sequential FLCDs Fabricated by Inkjet Printing Technology

23. 9.1:Invited Paper: Fast High Resolution Ferroelectric Liquid Crystal Displays

24. Paper No 9.3: Liquid Crystal Gratings Technologies and Ferroelectric Liquid Crystal-Based Gratings

25. 27.4L: Late-News Paper: A New Mode LCD with Intrinsic Continuous Grayscale Memory Using Ferroelectric Liquid Crystalline Polymer

26. L-7:Late-News Paper: Bistable Ferroelectric Liquid Crystal Pretilt and Alignment Direction on Obliquely Deposited SiO2Surfaces

27. Giant electrical energy storage density in the P(VDF-TrFE)–graphene oxide composite papers with quasi-two-dimensional ferroelectricity.

28. Paper No P22: Fast Ferroelectric Liquid Crystal Display With Novel Photoaligned Layer

29. Paper No 6.4: Full-Color Field-Sequential Color Display Based on Electrically Suppressed Helix FLC

30. 17.1: Invited Paper : Novel Uses of Organosiloxane Liquid Crystals

31. Paper No S1.1: Photoaligned Ferroelectric Liquid Crystals: The New Horizons in Physics and Applications (Invited Paper)

32. Paper No S3.2: Chiral Mesomorphic Compounds and Materials for Display Applications

33. Paper No S5.4: Polymer Stabilized Electrically Suppressed Helix Ferroelectric Liquid Crystal

35. Paper ID number CH031 role of misfit dislocations in ferroelectric thin films

36. Comments on the Paper by R. Ezhil Vizhi et al. 'Synthesis, Crystal Growth, Structural, Dielectric and Ferroelectric Properties of N-Acetyl Glycine Phosphite (AGPI) Single Crystals'

37. Manipulation of microparticles using surface stabilized ferroelectric liquid crystals (Invited Paper)

38. Photorefractive effect of ferroelectric liquid crystals (Invited Paper)

39. Experimental demonstration of a ferroelectric FET using paper substrate

40. Continuous carbon fiber polymer-matrix composites in unprecedented antiferroelectric coupling providing exceptionally high through-thickness electric permittivity.

41. 71.3: Invited Paper: Speckle Suppression by Means of Ferroelectric LC Cell

43. New opportunities in ultrasonic transducers emerging from innovations in piezoelectric materials (Invited Paper)

44. Surface-stabilized ferroelectric liquid crystals: a promising technology for high-resolution displays (Invited Paper)

45. Ferroelectric liquid crystalline polymers for display devices (Invited Paper)

46. 11.1: Invited Paper: Ferroelectric Liquid Crystals as a Material for Volumetric Displays

47. Defect-free deformed-helix ferroelectric liquid-crystal mode in a vertically aligned configuration (Invited Paper)

48. Reply to comment on the paper “Remarkable enhancement in dielectric, piezoelectric, ferroelectric and SHG properties by iron doping in sodium para-nitrophenolatedihydrate single crystal” [Mater. Lett. 165 (2016) 99–102].

49. Flexoelectric aging effect in ferroelectric materials.

50. Application of the Skanavi model to CaCu3Ti4O12 materials.